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Nano-textured fluidic biochip as biological filter for selective survival of neuronal cells

机译:纳米纹理化流体生物芯片作为神经细胞选择性存活的生物过滤器

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This is an innovative study to engineer biological filter to evaluate the effect of template surface structure and physiochemical properties that can be used for wide variety of applications in biological, health care as well as environmental protection. Specifically, planar silicon (Si) wafer and arrayed Si nano-tips (SiNT) templates were fabricated and coated with gold for various lengths of time to study the effect of surface charge, surface roughness, and hydrophilicity on biological activity of rat pheochromocytoma cell lines PC12. The initial growth and proliferation of PC12 cells on Si and SiNT templates showed an antipathy for the ultra-sharp SiNTs templates. In contrast, the same cells demonstrated a preferable adherence to and proliferation on planar Si templates, resulting in higher cell densities by three orders of magnitude than those on SiNT templates. It is hypothesized that SiNTs array does generate nano-fluidic effect such that the effective contact region for aqueous solution on SiNTs is lower than that on planar Si templates, thus decreasing adsorbable area for cell viability and survival. Moreover, the effect of the gold coating on cell number density was analyzed in terms of the surface roughness, zeta potential and wetting properties of the templates. It was determined that surface charge, as measured by the zeta potential, strongly correlated with the trend observed in the surface cell density, whereas no such correlation was observed for surface roughness or wetting properties in the ranges of our experiment conditions. (c) 2014 Wiley Periodicals, Inc. J Biomed Mater Res Part A: 103A: 2015-2023, 2015.
机译:这是一项创新的研究,旨在对生物过滤器进行工程设计以评​​估模板表面结构和理化特性的影响,这些模板可用于生物学,医疗保健和环境保护等多种应用。具体而言,制造平面硅(Si)晶片和阵列式Si纳米尖端(SiNT)模板并在金上涂覆不同的时间,以研究表面电荷,表面粗糙度和亲水性对大鼠嗜铬细胞瘤细胞系生物学活性的影响PC12。 PC12细胞在Si和SiNT模板上的初始生长和增殖显示出对超锐利的SiNTs模板的反感。相比之下,相同的电池在平面Si模板上表现出更好的粘附性和增殖能力,从而导致比SiNT模板上的细胞密度高三个数量级。假设SiNTs阵列确实产生纳米流体效应,使得SiNTs上水溶液的有效接触区域低于平面Si模板上的有效接触区域,从而减小了细胞活力和存活的可吸附面积。此外,根据模板的表面粗糙度,ζ电势和润湿性能分析了金涂层对细胞数目密度的影响。已经确定,通过ζ电势测量的表面电荷与表面细胞密度中观察到的趋势高度相关,而在我们的实验条件范围内,未观察到表面粗糙度或润湿性能的这种相关性。 (c)2014 Wiley Periodicals,Inc.J Biomed Mater Res Part A:103A:2015-2023,2015。

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